Conference Object Restricted access M33
2025
Cvetković, Aleksandar 
Tasić, Zaklina 
Petrović Mihajlović, Marija 
Radovanović, Milan B. 
Simonović, Ana 
Antonijević, Milan 
Milić, Snežana 
The Academy of Applied Studies Polytechnic, Belgrade
Conference Proceedings [Elektronski izvor] - International Scientific and Professional Conference Politehnika 2025, Belgrade, 28th November 2025
1141
1146
English
M33 - Conference paper at an international conference, printed in full
This paper represents a short review of electrochemical sensors based on carbon materials, with a focus on carbon paste electrodes (CPEs) as signal detectors, and the pivot placed on the preparation steps, where CPEs stand out because of their easy preparation, regenerability, and high flexibility for modification. Incorporation of zinc oxide (ZnO) nanoparticles into CPE matrices enhances sensor performance by enlarging the active surface area, reducing charge-transfer resistance, and improving electron transfer kinetics. ZnO/CPE electrodes have demonstrated high sensitivity and selectivity for the detection of pharmaceuticals, food additives, dyes, and biologically active compounds. Their preparation is straightforward, typically involving co-precipitation synthesis of ZnO nanoparticles followed by mixing with graphite powder and binder. Combined electrochemical and morphological characterization provides insights into the structural and functional improvements achieved by ZnO modification, confirming their potential for advanced electrochemical sensing applications.
CPE, MCPE, ZnO nanoparticles, electrochemical sensors
978-86-7498-146-7
| dc.rights.license | ARR |
|---|---|
| dc.date.accessioned | 2025-12-12T09:42:19Z |
| dc.date.available | 2025-12-12T09:42:19Z |
| dc.date.issued | 2025 |
| dc.identifier.isbn | 978-86-7498-146-7 |
| dc.identifier.uri | https://conference.politehnika.edu.rs/proceedings/ |
| dc.identifier.uri | https://repozitorijum.tfbor.bg.ac.rs/handle/123456789/6050 |
| dc.description.abstract | This paper represents a short review of electrochemical sensors based on carbon materials, with a focus on carbon paste electrodes (CPEs) as signal detectors, and the pivot placed on the preparation steps, where CPEs stand out because of their easy preparation, regenerability, and high flexibility for modification. Incorporation of zinc oxide (ZnO) nanoparticles into CPE matrices enhances sensor performance by enlarging the active surface area, reducing charge-transfer resistance, and improving electron transfer kinetics. ZnO/CPE electrodes have demonstrated high sensitivity and selectivity for the detection of pharmaceuticals, food additives, dyes, and biologically active compounds. Their preparation is straightforward, typically involving co-precipitation synthesis of ZnO nanoparticles followed by mixing with graphite powder and binder. Combined electrochemical and morphological characterization provides insights into the structural and functional improvements achieved by ZnO modification, confirming their potential for advanced electrochemical sensing applications. |
| dc.language.iso | en |
| dc.publisher | The Academy of Applied Studies Polytechnic, Belgrade |
| dc.source | Conference Proceedings [Elektronski izvor] - International Scientific and Professional Conference Politehnika 2025, Belgrade, 28th November 2025 |
| dc.rights.uri | All rights reserved |
| dc.subject | CPE |
| dc.subject | MCPE |
| dc.subject | ZnO nanoparticles |
| dc.subject | electrochemical sensors |
| dc.title | Carbon paste electrodes and ZnO/CPE sensors: a short review |
| dc.type | conferenceObject |
| dc.type.version | publishedVersion |
| dc.citation.spage | 1141 |
| dc.citation.epage | 1146 |
| dc.citation.rank | M33 |
| dc.creator | Cvetković, Aleksandar |
| dc.creator | Tasić, Zaklina |
| dc.creator | Petrović Mihajlović, Marija |
| dc.creator | Radovanović, Milan B. |
| dc.creator | Simonović, Ana |
| dc.creator | Antonijević, Milan |
| dc.creator | Milić, Snežana |
| Carbon paste electrodes and ZnO/CPE sensors: a short review | 1 |
|---|
| Cvetkovic et al. - Politehnika 2025.pdf | 0 |
|---|